Copper and Nitrogen co-doped TiO2 photocatalyst with enhanced optical absorption and catalytic activity

X射线光电子能谱 光催化 带隙 材料科学 光致发光 掺杂剂 分析化学(期刊) 催化作用 可见光谱 价(化学) 兴奋剂 光化学 化学工程 锐钛矿 化学 光电子学 工程类 色谱法 生物化学 有机化学
作者
R. Jaiswal,Jyoti S. Bharambe,N. Patel,Alpa Dashora,D.C. Kothari,A. Miotello
出处
期刊:Applied Catalysis B-environmental [Elsevier BV]
卷期号:168-169: 333-341 被引量:263
标识
DOI:10.1016/j.apcatb.2014.12.053
摘要

Abstract Cu–N-codoped TiO 2 photocatalyst is synthesized by sol–gel method to obtain enhanced optical absorption in the visible region. Optimum concentrations of Cu and N were obtained by maximizing the photocatalytic activity for the monodoped (Cu or N) TiO 2 . These optimized concentrations were used for synthesizing (Cu, N)–codoped TiO 2 . The photocatalysts were characterized using XRD, micro-Raman, SEM, XPS, BET surface area analyzer, UV–vis diffuse reflectance spectroscopy and photoluminescence. XPS study suggests the incorporation of Cu 2+ into TiO 2 lattice, which assists N to substitutionally replace oxygen in codoped TiO 2 , while maintaining the anatase phase even after doping. N-doping creates minor variation in the energy band gap of TiO 2 reducing it upto 3.0 eV, while Cu doping was able to narrow the band gap to 2.2 eV mainly due to the localized levels of Cu-3d states and shifting of Ti-3d states to lower energy (due to oxygen vacancies) in the band-gap as deduced from XPS data and confirmed by the DFT calculation. In (Cu, N)–codoped TiO 2 , visible light absorption is higher than the other TiO 2 samples, a feature that is mainly attributed to the formation of an isolated intermediate band (IB) occurring due to the strong hybridization between Cu 3d and N 2p orbitals. This IB contributes to visible light absorption by two step optical transition with the first transition from valence band (VB) to IB and the second from IB to conduction band (CB). The dopant species may also act to reduce the charge carrier recombination by acting as the trapping sites for photogenerated charges. (Cu, N)–codoped TiO 2 was able to degrade Methylene Blue dye and p -Nitrophenol solution under light irradiation with significantly better rate in comparison to monodoped and undoped TiO 2 . High photocatalytic activity is attributed to the presence of IB in the energy band gap of TiO 2 , which creates the synergic effect by higher visible light absorption and lower recombination of photogenerated charges.
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